Automated HPLC Sample Preparation on CyBio FeliX

​​Automated Sample Prep for Increased Throughput and Consistent Results​

​​Normalize sample concentrations to improve data quality​ 

Avoid overloading and maximize peak resolution by optimizing the concentration of every sample. With 8 independent pistons, SELECT Head allows you to dilute samples to the ideal concentration for analysis. 

​​Ensure data integrity with barcode verification and process documentation​ 

​​Automated sample handling reduces errors introduced by manual sample transfer. With barcode verification of sample plates and 21 CFR Part 11-compliant documentation, CyBio FeliX ensures that your samples are tracked throughout the process.   

​​​Flexibility / Ease of use​ 

​​With its compact footprint, the CyBio FeliX fits on most standard lab benches and inside a standard biosafety cabinet or laminar flow hood. 

​Equipment:​ 

  • ​​FeliX Base Unit (Enclosed or Clean Bench)
  • ​SELECT Head 8/1000µL
  • ​Random Access Adapter: Maximize the speed and flexibility offered by the SELECT Head! This adapter allows any of the 8 independent channels to load a sample into any HPLC vial.   
  • ​TipBox 96/1000µL​ 

​​Your Advantages:​ 

  • Modular application script allows for maximum flexibility of the application.
  • CyBio FeliX delivers more reproducible results compared to manual preparation.
  • Application specialists can provide customization to your specific needs upon request.
  • ​Improved throughput and freedom to do more with your time

High-Performance Liquid Chromatography (HPLC) is an advanced analytical technique used to separate, identify, and quantify components in a liquid mixture. It’s widely used in fields such as pharmaceuticals, environmental science, food safety, and chemical research.

Here’s how it works:

  • A liquid sample containing dissolved compounds is injected into the system.
  • The sample is carried by a solvent (mobile phase) through a column packed with a solid material (stationary phase).
  • As the sample moves through the column, different compounds interact with the stationary phase to varying degrees, causing them to separate based on their chemical properties.
  • A detector measures the separated compounds as they exit the column, producing a chromatogram—a visual representation of the results.

HPLC allows for both qualitative analysis (what compounds are present) and quantitative analysis (how much of each compound is present). It’s known for its precision, sensitivity, and ability to handle complex mixtures.